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VISIONTECHNIK

Coaxial lights for industrial machine vision

A coaxial light for industrial machine vision feeds light into the optical axis of the camera through a beam splitter. On suitable flat, reflective parts, printing, etching, engraving and shallow structural transitions stand out with strong contrast. Reflections do not simply disappear, though: tilt, curvature, roughness, recesses and the optical setup all change the image. For a shortlist, check the light field, housing and aperture dimensions, working distance, wavelength and electrical integration, then test critical features under realistic installation conditions.

218 products

Manufacturer
Coaxial class?
Light color
Housing length (mm)
Housing width (mm)
Operating mode?
Ingress protection
Power consumption (W)
Supply voltage (V)
Connection

Products

OPT-COC50-W

OPT

Coaxial light OPT-COC50-W

OPT-COC50-W

High-precision / anti-ghosting, White

Price and availability on request

OPT-COC50-R

OPT

Coaxial light OPT-COC50-R

OPT-COC50-R

High-precision / anti-ghosting, Red

Price and availability on request

OPT-COC50-G

OPT

Coaxial light OPT-COC50-G

OPT-COC50-G

High-precision / anti-ghosting, Green

Price and availability on request

OPT-COC50-B

OPT

Coaxial light OPT-COC50-B

OPT-COC50-B

High-precision / anti-ghosting, Blue

Price and availability on request

OPT-COC60-W

OPT

Coaxial light OPT-COC60-W

OPT-COC60-W

High-precision / anti-ghosting, White

Price and availability on request

OPT-COC60-R

OPT

Coaxial light OPT-COC60-R

OPT-COC60-R

High-precision / anti-ghosting, Red

Price and availability on request

OPT-COC60-G

OPT

Coaxial light OPT-COC60-G

OPT-COC60-G

High-precision / anti-ghosting, Green

Price and availability on request

OPT-COC60-B

OPT

Coaxial light OPT-COC60-B

OPT-COC60-B

High-precision / anti-ghosting, Blue

Price and availability on request

Choosing coaxial lighting for your inspection task

Start with the surface and how the part sits

Coaxial lights are incident-light lights: they direct light from the camera side through a beam splitter almost along the camera axis onto the part. The beam splitter directs light onto the part while the camera looks through the same assembly. A flat surface square to the camera returns a great deal of light into the lens. Tilted, recessed, rough or differently reflecting areas send back a different share and stand out in the image. Whether a feature ends up bright or dark comes down to material, geometry, orientation and exposure.

That makes coaxial light a strong candidate on largely flat, reflective parts. Curvature, pronounced tilt, deep structures or a part that moves around will introduce brightness gradients and shading. The lighting controls the optical path, but it will not remove every reflection, and any blanket approval for metal, glass or printed circuit boards would be meaningless without a specific part.

Reconcile the usable field of view with the mechanics

Look at the emitting area or illuminated field together with the camera field of view. An illumination dimension that matches on paper is not the same as even usability out to the edge of the image. Lens, aperture, working distance, part tilt and mechanical openings all shape the area you can really use.

Our product data does not use the same field names for illumination and housing dimensions everywhere, so compare the dimensional drawing and manufacturer data rather than relying on a single filter value. The lens also has to fit mechanically into the optical path, and in tight installations the housing height and cable exit matter as much as the emitting area.

A technical shortlist calls for the following:

  • Inspection surface: material, gloss level, roughness, flatness and permissible tilt.
  • Feature: type, size and the contrast you need on print, etching, engraving, edge or structure.
  • Optics: sensor size, lens dimensions, focal length, aperture, field of view and working distance.
  • Process: cycle time, motion, exposure time, and continuous or strobe operation.
  • Integration: power supply or controller, connector, cable length, heat dissipation, IP rating and installation space.

Wavelength, sensor, lens, filter and beam splitter have to work together optically, which matters especially for IR and UV versions. Working distance and IP rating are missing from some of the listed product data, and those values must never be inferred from similar models.

Use other geometries as a cross-check

A ring light usually mounts more compactly around the lens, but it creates different bright spots on specular surfaces. Dark-field lighting puts more weight on topographic and scattering features. A dome light spreads light from many directions and looks calmer on curved, complex reflective parts. None of these classes wins outright; the feature and the geometry of the part decide.

For a comparison, supply the permissible variation in position and surface alongside good and bad parts. Keep camera, lens and exposure as constant as possible between test versions. That way you can see whether the contrast really comes from the lighting geometry and whether it survives inside your process limits.

Where you plan to use polarization, test it as part of the complete optical path. Polarizing filters change certain reflection components, yet they cost light and cannot make up for the wrong geometry. Before ordering, also record the source and revision of the dimensional, controller and spectral information. That matters especially when you are replacing an existing model or when similar versions are documented to differing levels of detail.

Common questions about selection

What do you need in order to size a coaxial light?
Field of view, working distance, sensor size, lens and its outside dimensions, available installation height, and how the part sits including any tilt. The nominal emitting area does not automatically translate into an evenly usable camera image.
Can I replace an existing ring light with coaxial lighting without testing?
No. The two create different optical paths and therefore different gloss, shadow and contrast conditions. Before switching, check installation space, field of view, positional variation, surface and electrical integration, and run a direct comparison on anything critical.
Which points have to be confirmed before ordering?
Emitting area, housing and aperture dimensions, working distance, wavelength, supply or controller, connector, operating mode, heat dissipation and IP rating. For IR or UV, the sensor, lens, filter, beam splitter and safety requirements have to match too.

Next technical step

Narrow down a coaxial light for your real setup

Send us the surface, inspection feature, field of view, working distance and your camera and lens data. We compare suitable product data and make clear which effects still have to be confirmed on the part.

Describe your optical setup